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Limitation of the Lee-Huang-Yang interaction in forming a self-bound state in Bose-Einstein condensates

机译:李 - 黄阳相互作用在Bose-Einstein凝聚物中形成自束性的相互作用

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The perturbative Lee-Huang-Yang (LHY) interaction proportional to n(3/2), where n is the density, creates an infinitely repulsive potential at the center of a Bose-Einstein condensate (BEC) with net attraction, which stops the collapse to form a self-bound state in a dipolar BEC and in a binary BEC. However, recent microscopic calculations of the non-perturbative beyond-meanfield (BMF) interaction indicate that the LHY interaction is valid only for very small values of gas parameter x. We show that a realistic non-perturbative BMF interaction can stop collapse and form a self-bound state only in a weakly attractive binary BEC with small x values (x less than or similar to 0.01), whereas the perturbative LHY interaction stops collapse for all attractions. We demonstrate these aspects using an analytic BMF interaction with appropriate weak-coupling LHY and strong coupling limits. (C) 2019 Elsevier Inc. All rights reserved.
机译:与n(3/2)成比例的扰动李 - 黄杨(LHY)相互作用,其中n是密度,在培养 - 爱因斯坦冷凝物(BEC)的中心产生无限的令人厌恶的潜力,其中涉及净吸引力,这阻止了 崩溃在Dipolar Bec和二进制中形成自我绑定状态。 然而,最近的非扰动超出意义(BMF)相互作用的显微镜计算表明LHY相互作用仅对气体参数X的非常小的值有效。 我们表明,逼真的非扰动BMF互动可以停止崩溃,只能在弱吸引力的二进制BEC中停止崩溃并形成具有小的X值(x小于或类似的0.01),而扰动的LHY相互作用停止崩溃 景点。 我们使用与适当的弱耦合LHY和强耦合限制的分析BMF相互作用来证明这些方面。 (c)2019 Elsevier Inc.保留所有权利。

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